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首页> 外文期刊>Agroforestry Systems >Integrating local knowledge with tree diversity analyses to optimize on-farm tree species composition for ecosystem service delivery in coffee agroforestry systems of Uganda
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Integrating local knowledge with tree diversity analyses to optimize on-farm tree species composition for ecosystem service delivery in coffee agroforestry systems of Uganda

机译:将本地知识与树分分析集成,以优化乌干达咖啡制剂系统中的生态系统服务交付的农场树种组成

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摘要

Coffee agroforestry systems deliver ecosystem services (ES) critical for rural livelihoods like food but also disservices that constrain livelihoods like fostering coffee-pests. Since such ES are tree-based, maximizing ES and limiting constraints requires knowledge on optimizing on-farm tree composition especially trees adapted to local conditions. The study was in three sites along a rainfall gradient in Central Uganda where we: assessed tree diversity in coffee agroforestry; ranked tree suitability for providing ES according to farmers' knowledge; and then proposed an approach for optimizing on-farm tree composition for delivery of ES. We collected data on tree diversity and, farmers' knowledge of tree species and the ES they provide. Farmers ranked ES in order of importance to their livelihoods (Needs rank') and ranked trees according to suitability for providing ES. Using Bradley Terry modeling, we grouped trees into ES groups' according to suitability for providing different ES and ranked ES groups' according to tree diversity (Diversity rank'). Tree-suitability for providing ES and importance of ES to farmers varied with rainfall regime but tree diversity did not match farmers' needs for ES. We propose the FaD-FaN (matching farm tree diversity to farmers' needs) approach for optimizing tree species composition with respect to tree-suitability for farmers' priority ES. Farmers locally prioritize ES needed and identify trees that best serve such ES. The approach then focuses on modifying on-farm tree diversity to match/suit farmers' priority ES. The FaD-FaN approach caters for varying socio-ecological conditions; it's adaptable for other coffee and cocoa-growing areas worldwide.
机译:咖啡制乐园系统为农村生计批评提供生态系统服务,如食物,也是震惊,这使得培养咖啡虫等生计。由于这些es是基于树的,因此最大化ES和限制约束需要了解在农场树组合上优化的知识,尤其是适于局部条件的树木。该研究沿着乌干达中部的降雨梯度在三个地点,我们:评估咖啡制剂的树木多样性;根据农民知识提供的排名树适合性;然后提出了一种优化农场树组合物的方法,以进行ES。我们收集了树木多样性的数据,农民对树种的了解和他们提供的es。农民以重视他们的生计(需要等级')和根据提供es的适用性排名的树木排名。使用Bradley Terry模型,我们根据树多(多样性等级')根据提供不同的ES和排名的ES组的适用性将树分组为ES组'。为农民提供ES和重要性的树适当性,随着降雨制度而变化,但树多样性并不匹配农民对es的需求。我们提出了FAD-FAN(匹配农场树多样性到农民需求)方法,用于优化农民优先级的树木适合性的树种组成。当地优先考虑ES所需的农民并识别最能享受此类es的树木。然后,该方法侧重于修改农场树多样性,以匹配/适合农民优先级。 FAD-FAN方法迎合了不同的社会生态条件;它适用于全球其他咖啡和可可生长的地区。

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